首页> 外文期刊>Journal of orthopaedic research >Intervertebral disc cell response to dynamic compression is age and frequency dependent.
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Intervertebral disc cell response to dynamic compression is age and frequency dependent.

机译:椎间盘细胞对动态压缩的反应取决于年龄和频率。

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The maintenance of the intervertebral disc extracellular matrix is regulated by mechanical loading, nutrition, and the accumulation of matrix proteins and cytokines that are affected by both aging and degeneration. Evidence suggests that cellular aging may lead to alterations in the quantity and quality of extracellular matrix produced. The aims of this study were to examine the role of loading and maturation (a subset of aging), and the interaction between these two factors in intervertebral disc cell gene expression and biosynthesis in a controlled 3D culture environment. Cells were isolated from young (4-6 months) and mature (18-24 months) bovine caudal annulus fibrosus and nucleus pulposus tissue. Isolated cells were seeded into alginate and dynamically compressed for 7 days at either 0.1, 1, or 3 Hz or maintained as a free-swelling control. After 7 days, DNA and sulfated glycosaminoglycan contents were analyzed along with real time, quantitative reverse transcription-polymerase chain reaction analysis for collagen types I and II, aggrecan, and matrix metalloproteinase-3 gene expression. Results suggest that maturation plays an important role in intervertebral disc homeostasis and influences the cell response to mechanical loading. While isolated intervertebral disc cells responded to mechanical compression in 3D culture, the effect of loading frequency was minimal. Altered cellular phenotype and biosynthesis rates appear to be an attribute of the cell maturation process, potentially independent of changes in cellular microenvironment associated with lost nutrition and disc degeneration. Mature cells may have a decreased capacity to create or retain extracellular matrix components in response to mechanical loading compared to young cells.
机译:椎间盘细胞外基质的维持受到机械负荷,营养以及受衰老和变性影响的基质蛋白和细胞因子的积累的调节。有证据表明,细胞衰老可能会导致细胞外基质的数量和质量发生变化。这项研究的目的是检查负荷和成熟(衰老的一个子集)的作用,以及在受控3D培养环境中这两个因素在椎间盘细胞基因表达和生物合成中的相互作用。从年轻(4-6个月)和成熟(18-24个月)牛尾纤维环和髓核组织分离细胞。将分离的细胞接种到藻酸盐中,并以0.1、1或3 Hz动态压缩7天,或保持为自由膨胀对照。 7天后,对DNA和硫酸化的糖胺聚糖含量进行分析,并进行实时,定量逆转录聚合酶链反应分析,以分析I型和II型胶原,聚集蛋白聚糖和基质金属蛋白酶-3基因的表达。结果表明,成熟在椎间盘稳态中起重要作用,并影响细胞对机械负荷的反应。尽管分离的椎间盘细胞在3D培养中对机械压缩有反应,但加载频率的影响很小。改变的细胞表型和生物合成速率似乎是细胞成熟过程的一个属性,可能独立于与营养损失和椎间盘退变相关的细胞微环境的变化。与年轻细胞相比,响应于机械负荷,成熟细胞产生或保留细胞外基质成分的能力可能降低。

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